Photothermal‐Controllable Microneedles with Antitumor, Antioxidant, Angiogenic, and Chondrogenic Activities to Sequential Eliminate Tracheal Neoplasm and Reconstruct Tracheal Cartilage

Author:

Wang B.1,Fei X.1,Yin H. F.2,Xu X. N.1,Zhu J. J.1,Guo Z. Y.1,Wu J. W.1,Zhu X. S.1,Zhang Y.3,Xu Y.1,Yang Y.145ORCID,Chen L. S.1

Affiliation:

1. Department of Thoracic Surgery, Shanghai Pulmonary Hospital, School of Medicine Tongji University Shanghai 200433 China

2. Department of Infection Management, Shanghai Pulmonary Hospital, School of Medicine Tongji University Shanghai 200433 China

3. Department of Orthopedics, Shanghai Yangpu Hospital, School of Medicine Tongji University Shanghai 200090 China

4. Central Laboratory, Shanghai Pulmonary Hospital, School of Medicine Tongji University Shanghai 200433 China

5. School of Materials Science and Engineering Tongji University Shanghai 201804 China

Abstract

AbstractThe optimal treatment for tracheal tumors necessitates sequential tumor elimination and tracheal cartilage reconstruction. This study introduces an innovative inorganic nanosheet, MnO2/PDA@Cu, comprising manganese dioxide (MnO2) loaded with copper ions (Cu) through in situ polymerization using polydopamine (PDA) as an intermediary. Additionally, a specialized methacrylic anhydride modified decellularized cartilage matrix (MDC) hydrogel with chondrogenic effects is developed by modifying a decellularized cartilage matrix with methacrylic anhydride. The MnO2/PDA@Cu nanosheet is encapsulated within MDC‐derived microneedles, creating a photothermal‐controllable MnO2/PDA@Cu‐MDC microneedle. Effectiveness evaluation involved deep insertion of the MnO2/PDA@Cu‐MDC microneedle into tracheal orthotopic tumor in a murine model. Under 808 nm near‐infrared irradiation, facilitated by PDA, the microneedle exhibited rapid overheating, efficiently eliminating tumors. PDA's photothermal effects triggered controlled MnO2 and Cu release. The MnO2 nanosheet acted as a potent inorganic nanoenzyme, scavenging reactive oxygen species for an antioxidant effect, while Cu facilitated angiogenesis. This intervention enhanced blood supply at the tumor excision site, promoting stem cell enrichment and nutrient provision. The MDC hydrogel played a pivotal role in creating a chondrogenic niche, fostering stem cells to secrete cartilaginous matrix. In conclusion, the MnO2/PDA@Cu‐MDC microneedle is a versatile platform with photothermal control, sequentially combining antitumor, antioxidant, pro‐angiogenic, and chondrogenic activities to orchestrate precise tracheal tumor eradication and cartilage regeneration.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Program of Shanghai Academic Research Leader

Natural Science Foundation of Shanghai Municipality

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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